Investigation of gas flow through soils and granular fill materials for the optimisation of radon soil depressurisation systems.


Journal

Journal of environmental radioactivity
ISSN: 1879-1700
Titre abrégé: J Environ Radioact
Pays: England
ID NLM: 8508119

Informations de publication

Date de publication:
Mar 2019
Historique:
received: 21 09 2018
revised: 04 12 2018
accepted: 23 12 2018
pubmed: 15 1 2019
medline: 1 2 2019
entrez: 15 1 2019
Statut: ppublish

Résumé

The purpose of this study is to investigate gas flow through different types of granular fill materials and soil by means of a series of experimental laboratory tests, in relation to soil depressurisation systems for radon reduction under buildings and the soil surrounding the foundation. Gas permeability characterisation of materials used as granular fill material beneath the slab in buildings is a key parameter for the optimum performance of soil depressurisation systems to mitigate radon. A test apparatus was developed, adapted from previous studies, to measure the gas permeability of the samples and Finite Element Method numerical simulations were validated to simulate the flow behaviour through them. Theoretical expressions for permeability were discussed based on the analysis of experimental results and numerical simulations, finding that Darcy-Forchheimer equation provides the best match to the experimental results. Darcy's law also proved to be suitable for low gas velocities, whereas Ergun's equation resulted in a poor fit of the experimental data. Benchmark analysis of the granular fill materials under study and other European standards (Spanish, Irish and British) is also presented.

Identifiants

pubmed: 30640034
pii: S0265-931X(18)30692-1
doi: 10.1016/j.jenvrad.2018.12.024
pii:
doi:

Substances chimiques

Gases 0
Soil 0
Soil Pollutants, Radioactive 0
Radon Q74S4N8N1G

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

200-209

Informations de copyright

Copyright © 2018 Elsevier Ltd. All rights reserved.

Auteurs

Marta Fuente (M)

School of Physics, National University of Ireland Galway, Ireland; Civil Engineering, College of Engineering & Informatics, National University of Ireland Galway, Ireland; Centre for Marine and Renewable Energy (MaREI), Ryan Institute, National University of Ireland Galway, Ireland. Electronic address: m.fuentelastra1@nuigalway.ie.

Eduardo Muñoz (E)

Eduardo Torroja Institute for Construction Science IETcc-CSIC, Madrid, Spain; Superior Technical School of Architecture, Technical University of Madrid, UPM, Spain. Electronic address: emunozlorenzo@ietcc.csic.es.

Isabel Sicilia (I)

Eduardo Torroja Institute for Construction Science IETcc-CSIC, Madrid, Spain.

Jamie Goggins (J)

Civil Engineering, College of Engineering & Informatics, National University of Ireland Galway, Ireland; Centre for Marine and Renewable Energy (MaREI), Ryan Institute, National University of Ireland Galway, Ireland.

Le Chi Hung (LC)

School of Physics, National University of Ireland Galway, Ireland; Civil Engineering, College of Engineering & Informatics, National University of Ireland Galway, Ireland; Centre for Marine and Renewable Energy (MaREI), Ryan Institute, National University of Ireland Galway, Ireland.

Borja Frutos (B)

Eduardo Torroja Institute for Construction Science IETcc-CSIC, Madrid, Spain. Electronic address: borjafv@ietcc.csic.es.

Mark Foley (M)

School of Physics, National University of Ireland Galway, Ireland. Electronic address: mark.foley@nuigalway.ie.

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Classifications MeSH